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ST75C520 查看數據表(PDF) - STMicroelectronics

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ST75C520
ST-Microelectronics
STMicroelectronics ST-Microelectronics
ST75C520 Datasheet PDF : 45 Pages
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ST75C520
IV - FUNCTIONAL DESCRIPTION
IV.1 - System Architecture
The chip allows the design of a complete FAX
data-pump without any external component. Aver-
satile dual port RAM allows an easy interface with
most micro-controllers.
IV.2 - Operation
IV.2.1 - Modes
The modem implementation is fully compatible with
FAX modulation recommendations. The modula-
tion can be either Trellis Coded Modulation (TCM)
as in V.17 14400, 12000, 9600, 7200bps rates,
Quadrature Amplitude Modulation (QAM) as in
V.29 9600, 7200, 4800 and V.27ter 4800 and
2400bps. Other modes of operation include tone
and DTMF detection or generation, or speech
mode.
IV.2.2 - Transmitter Description
The signal pulses are shaped in a dedicated filter
further combined with a compromise transmit
equalizer suited for transmission over strongly dis-
torted lines. 3 different compromise equalizers are
available and can be selected by software.
IV.2.3 - Receiver Description
The receiver section handles complex signals and
uses a fractionally spaced complex equalizer. It is
able to cope with distant modem timing drifts up to
10-4 as specified in the ITU-T recommendations. It
also compensate for frequency drift up to 10Hz and
for phase jitter at multiple and simultaneous fre-
quencies.
IV.2.4 - Tone Generator Description
Four tones can be simultaneously generatedby the
ST75C520. The tones are determined by their
frequenciesand by the output amplitude level. A set
of specific commands are also available for DTMF
generation (using two of the four generators avail-
able).
IV.2.5 - Tone Detector Description
Sixteen tones can be simultaneously detected by
the ST75C520. Each of the tones to be detected is
defined by the coefficients of a 4th order program-
mable IIR. Detection thresholds are also program-
mable from -45dBm up to -10dBm. DTMF detection
is also available and is performed by a specific filter
section (that requires no programming).
IV.2.6 - DTMF Detector Description
A DTMF Detector is included in the ST75C520, it
allows detectionof valid DTMF Digits. Avalid DTMF
Digit is defined as a dual Tone with a total power
higher than -35dBm, a duration higher than 40ms
and a differential amplitude within 8dB (negative or
positive).
IV.2.7 - Voice Mode
The ST75C520 voice mode allows the implemen-
tation of enhanced telephone functions like an-
swering machines. The incoming samples
(9600Hz), received from the line are PCM A-law
coded and writen into the dual port RAM. The
outpoing samples are decompressed using the
same A-law and output to the telephone line.
The voice mode is entered using a CONF com-
mand, it can be either transmit voice from the dual
RAM Tx buffer to the telephone line, receive voice
from the telephone line to the dual RAM buffer, or
both of these functions simultaneously. The format
of the signal is A-law coded without complementa-
tion of the even bits. The buffer mechanism, be-
tween the host micro-controler and the ST75C520,
is identical to the mechanism used for parallel data
exchanges except that it starts immediately after
CONF command, the size of the transmit and
received buffer, are and must be 8 bytes, there is
no need for a XMIT command, and if an overrun or
underrun condition occurs no error will be reported
to the host processor.
IV.2.8 - Analog Loop Back Test Mode
In any transmission standard and serial data for-
mat, the ST75C520 can be configured for analog
loop back test.
IV.2.9 - Low Power Mode
Sleep state can be attained by a SLEEP command.
Activating the reset signal will wake up the data-
pump. When in sleep mode, the dual port RAM is
unavailable and the clocks are disabled.
When entering the low power mode, the ST75C520
stops its oscillator, all the peripherals of the DSP
core are stopped in order to reduce the power
consumption. The dual RAM is made inacessible.
The ST75C520 can be awakened by a hardware
reset.
There is a maximum time of 20ms to restart the
oscillator after waking up and an additional 5ms
after the interrupt to be able to accept any com-
mand coming from the host.
10/45

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